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Published on: August 9, 2019
Antibody to CD137 Activated by Extracellular Adenosine Triphosphate Is Tumor Selective and Broadly Effective In Vivo
Mika Kamata-Sakurai1, Yoshinori Narita2, Yuji Hori3
1Translational Research Division, Chugai Pharmaceutical Co., Ltd., Chuo-ku, Tokyo, Japan. mika.sakurai22@chugai-pharm.co.jp.
Abstract:
Agonistic antibodies targeting CD137 have been clinically unsuccessful due to systemic toxicity. Because conferring tumor selectivity through tumor-associated antigen limits its clinical use to cancers that highly express such antigens, we exploited extracellular adenosine triphosphate (exATP), which is a hallmark of the tumor microenvironment and highly elevated in solid tumors, as a broadly tumor-selective switch. We generated a novel anti-CD137 switch antibody, STA551, which exerts agonistic activity only in the presence of exATP. STA551 demonstrated potent and broad antitumor efficacy against all mouse and human tumors tested and a wide therapeutic window without systemic immune activation in mice. STA551 was well tolerated even at 150 mg/kg/week in cynomolgus monkeys. These results provide a strong rationale for the clinical testing of STA551 against a broad variety of cancers regardless of antigen expression, and for the further application of this novel platform to other targets in cancer therapy. SIGNIFICANCE: Reported CD137 agonists suffer from either systemic toxicity or limited efficacy against antigen-specific cancers. STA551, an antibody designed to agonize CD137 only in the presence of extracellular ATP, inhibited tumor growth in a broad variety of cancer models without any systemic toxicity or dependence on antigen expression.See related commentary by Keenan and Fong, p. 20.This article is highlighted in the In This Issue feature, p. 1.
Insights
A new antibody, STA551, targets CD137 only in tumors with high extracellular ATP (exATP). This approach shows broad antitumor efficacy without systemic toxicity, offering a promising cancer therapy regardless of antigen expression.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Agonistic antibodies targeting CD137 have faced clinical challenges due to systemic toxicity.
- Current tumor-selective approaches rely on tumor-associated antigen expression, limiting applicability.
Purpose of the Study:
- To develop a novel anti-CD137 antibody with tumor selectivity.
- To leverage extracellular adenosine triphosphate (exATP) as a tumor-specific switch for antibody activation.
Main Methods:
- Generation of STA551, an anti-CD137 antibody activated by exATP.
- Evaluation of STA551's antitumor efficacy and toxicity in preclinical cancer models (mouse and human).
- Assessment of STA551 tolerability in non-human primates (cynomolgus monkeys).
Main Results:
- STA551 demonstrated potent and broad antitumor efficacy across diverse mouse and human tumor models.
- The antibody exhibited a wide therapeutic window with no observed systemic immune activation in mice.
- STA551 was well tolerated in cynomolgus monkeys, even at high doses.
Conclusions:
- STA551 offers a novel, tumor-selective approach to CD137 agonism, overcoming limitations of previous therapies.
- The exATP-activated platform provides a strong rationale for broad clinical testing in various cancers.
- This technology platform holds potential for application to other targets in cancer immunotherapy.
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